Department of Biomedical Engineering, Texas A&M University, College Station, Texas.
Department of Biomedical and Chemical Engineering, Syracuse University, Syracuse, New York.
J Biomed Mater Res A. 2020 Jun;108(6):1281-1294. doi: 10.1002/jbm.a.36901. Epub 2020 Feb 21.
Shape memory polymer (SMP) foams are a promising material for hemostatic dressings due to their biocompatibility, high surface area, excellent shape recovery, and ability to quickly initiate blood clotting. Biodegradable SMP foams could eliminate the need for a secondary removal procedure of hemostatic material from the patients' wound, further facilitating wound healing. In this study, we developed hydrolytically and oxidatively biodegradable SMP foams by reacting polyols (triethanolamine or glycerol) with 6-aminocaproic acid or glycine to generate foaming monomers with degradable ester bonds. These monomers were used in foam synthesis to provide highly crosslinked SMP foam structures. The ester-containing foams showed clinically relevant thermal properties that were comparable to controls and excellent shape recovery within eight min. Triethanolamine-based ester-containing foams showed interconnected porous structure along with increased mechanical strength. Faster hydrolytic and oxidative biodegradation rates were achieved in ester-containing foams in comparison to controls. These biodegradable SMP foams with clinically applicable thermal properties possess great potential as an effective hemostatic device for use in hospitals or on battlefields.
形状记忆聚合物(SMP)泡沫因其生物相容性、高比表面积、优异的形状恢复能力和快速启动凝血的能力,是一种有前途的止血敷料材料。可生物降解的 SMP 泡沫可以消除从患者伤口中去除止血材料的二次手术的需要,进一步促进伤口愈合。在这项研究中,我们通过将多元醇(三乙醇胺或甘油)与 6-氨基己酸或甘氨酸反应,生成具有可降解酯键的发泡单体,开发了水解和氧化可生物降解的 SMP 泡沫。这些单体用于泡沫合成,提供了高度交联的 SMP 泡沫结构。含酯的泡沫表现出与对照物相当的临床相关热性能和在 8 分钟内的优异形状恢复能力。基于三乙醇胺的含酯泡沫具有相互连接的多孔结构,同时机械强度增加。与对照物相比,含酯泡沫的水解和氧化降解速度更快。这些具有临床应用热性能的可生物降解 SMP 泡沫作为有效的止血装置,具有在医院或战场上使用的巨大潜力。